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首页> 外文期刊>ACS applied materials & interfaces >Novel Fabrication of Flexible Graphene-Based Chemical Sensors with Heaters using Soft Lithographic Patterning Method
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Novel Fabrication of Flexible Graphene-Based Chemical Sensors with Heaters using Soft Lithographic Patterning Method

机译:软光刻图案法新颖地制造带有加热器的柔性石墨烯基化学传感器

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摘要

We have fabricated graphene-based chemical sensors with flexible heaters for the highly sensitive detection of specific gases. We believe that increasing the temperature of the graphene surface significantly enhanced the electrical signal change of the graphene-based channel, and reduced the recovery time needed to obtain a normal state of equilibrium. In addition, a simple and efficient soft lithographic patterning process was developed via surface energy modification for advanced, graphene-based flexible devices, such as gas sensors. As a proof of concept, we demonstrated the high sensitivity of NO2 gas sensors based on graphene nanosheets. These devices were fabricated using a simple soft-lithographic patterning method, where flexible graphene heaters adjacent to the channel of sensing graphene were utilized to control graphene temperature.
机译:我们已经制造出带有柔性加热器的基于石墨烯的化学传感器,用于高灵敏度地检测特定气体。我们认为,增加石墨烯表面的温度会显着增强基于石墨烯的通道的电信号变化,并减少了获得正常平衡态所需的恢复时间。此外,还通过表面能量改性为简单的,基于石墨烯的柔性器件(例如气体传感器)开发了一种简单有效的软光刻图案化工艺。作为概念验证,我们展示了基于石墨烯纳米片的NO2气体传感器的高灵敏度。这些设备使用简单的软光刻图案化方法制造,其中与传感石墨烯通道相邻的柔性石墨烯加热器用于控制石墨烯温度。

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